Reduced-order anti-synchronization of the projections of the fractional order hyperchaotic and chaotic systems

M. Srivastava, S. Agrawal, Subir Das
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引用次数: 4

Abstract

The article aims to study the reduced-order anti-synchronization between projections of fractional order hyperchaotic and chaotic systems using active control method. The technique is successfully applied for the pair of systems viz., fractional order hyperchaotic Lorenz system and fractional order chaotic Genesio-Tesi system. The sufficient conditions for achieving anti-synchronization between these two systems are derived via the Laplace transformation theory. The fractional derivative is described in Caputo sense. Applying the fractional calculus theory and computer simulation technique, it is found that hyperchaos and chaos exists in the fractional order Lorenz system and fractional order Genesio-Tesi system with order less than 4 and 3 respectively. The lowest fractional orders of hyperchaotic Lorenz system and chaotic Genesio-Tesi system are 3.92 and 2.79 respectively. Numerical simulation results which are carried out using Adams-Bashforth-Moulton method, shows that the method is reliable and effective for reduced order anti-synchronization.
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分数阶超混沌和混沌系统投影的降阶反同步
本文旨在利用主动控制方法研究分数阶超混沌与混沌系统投影间的降阶反同步问题。该方法成功地应用于分数阶超混沌Lorenz系统和分数阶混沌Genesio-Tesi系统。利用拉普拉斯变换理论,导出了两系统间实现反同步的充分条件。分数阶导数是用卡普托意义来描述的。应用分数阶微积分理论和计算机模拟技术,发现分数阶Lorenz系统和分数阶Genesio-Tesi系统分别存在超混沌和混沌,其阶数分别小于4阶和3阶。超混沌Lorenz系统和混沌Genesio-Tesi系统的最低分数阶分别为3.92和2.79。采用Adams-Bashforth-Moulton方法进行的数值仿真结果表明,该方法可靠、有效地实现了降阶反同步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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